blob: 8cdf55c376df70247ffbc0ed2588787227ed713f [file] [log] [blame]
#include "dawn_native/AsyncTask.h"
#include "dawn_platform/DawnPlatform.h"
namespace dawn_native {
AsnycTaskManager::AsnycTaskManager(dawn_platform::WorkerTaskPool* workerTaskPool)
: mWorkerTaskPool(workerTaskPool) {
}
void AsnycTaskManager::PostTask(AsyncTask asyncTask) {
// If these allocations becomes expensive, we can slab-allocate tasks.
Ref<WaitableTask> waitableTask = AcquireRef(new WaitableTask());
waitableTask->taskManager = this;
waitableTask->asyncTask = std::move(asyncTask);
{
// We insert new waitableTask objects into mPendingTasks in main thread (PostTask()),
// and we may remove waitableTask objects from mPendingTasks in either main thread
// (WaitAllPendingTasks()) or sub-thread (TaskCompleted), so mPendingTasks should be
// protected by a mutex.
std::lock_guard<std::mutex> lock(mPendingTasksMutex);
mPendingTasks.emplace(waitableTask.Get(), waitableTask);
}
// Ref the task since it is accessed inside the worker function.
// The worker function will acquire and release the task upon completion.
waitableTask->Reference();
waitableTask->waitableEvent =
mWorkerTaskPool->PostWorkerTask(DoWaitableTask, waitableTask.Get());
}
void AsnycTaskManager::HandleTaskCompletion(WaitableTask* task) {
std::lock_guard<std::mutex> lock(mPendingTasksMutex);
auto iter = mPendingTasks.find(task);
if (iter != mPendingTasks.end()) {
mPendingTasks.erase(iter);
}
}
void AsnycTaskManager::WaitAllPendingTasks() {
std::unordered_map<WaitableTask*, Ref<WaitableTask>> allPendingTasks;
{
std::lock_guard<std::mutex> lock(mPendingTasksMutex);
allPendingTasks.swap(mPendingTasks);
}
for (auto& keyValue : allPendingTasks) {
keyValue.second->waitableEvent->Wait();
}
}
void AsnycTaskManager::DoWaitableTask(void* task) {
Ref<WaitableTask> waitableTask = AcquireRef(static_cast<WaitableTask*>(task));
waitableTask->asyncTask();
waitableTask->taskManager->HandleTaskCompletion(waitableTask.Get());
}
} // namespace dawn_native